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PMID: 12069556 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

A study of the phylogeny of Brassica rapa, B. nigra, Raphanus sativus, and their related genera using noncoding regions of chloroplast DNA.

Molecular phylogenetics and evolution ·Vol. 23 ·No. 2 ·2002-05-00 ·Pages 268-75

Yang YW, Tai PY, Chen Y, Li WH

Abstract

There are two evolutionary lineages in the genus Brassica: the rapa/oleracea lineage and the nigra lineage. Using nuclear DNA sequences such as the intergenic spacer between 5S rRNA genes and the internal transcribed spacer between 18S and 25S rRNA genes, we and others had previously demonstrated that Raphanus sativus is closely related to the nigra lineage. In the present study, we sequenced the chloroplast noncoding region between trnT and trnF and that between trnD and trnT in seven species and showed that R. sativus is more closely related to the rapa/oleracea lineage than to the nigra lineage. The conflicting results from nuclear DNA and chloroplast DNA support the hypothesis that Raphanus was derived from a hybridization between the rapa/oleracea and the nigra lineages. We estimated the date of this hybridization event to be 60% of the divergence time between the two Brassica lineages. In addition, the pattern and rate of nucleotide substitution were studied. There were more transversions than transitions in these noncoding regions, which have a high AT content. Furthermore, the proportion of transversions among the substitutions at a site increases with increasing A + T content of its two adjacent nucleotides. An influence of immediate 5(') pyrimidine on substitution pattern is also observed when both adjacent bases in the two DNA strands are A or T. The rate of nucleotide substitution in the trnL group I intron is only about one third of the rate in the nearby intergenic spacers in the trnT-trnF fragment. The rate of nucleotide substitution in the rapa/oleracea lineage is at least 1.5 times that in the nigra lineage.

MeSH Terms
Brassica rapa/genetics Brassicaceae/classification,genetics DNA, Chloroplast/chemistry,genetics DNA, Intergenic/genetics DNA, Plant/chemistry,genetics Genetic Variation Molecular Sequence Data Phylogeny Point Mutation/genetics RNA, Transfer, Leu/genetics RNA, Transfer, Phe/genetics RNA, Transfer, Thr/genetics Sequence Analysis, DNA Time Factors
Chemicals
DNA, Chloroplast DNA, Intergenic DNA, Plant RNA, Transfer, Leu RNA, Transfer, Phe RNA, Transfer, Thr
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Yang Yau-Wen
Institute of Botany, Academia Sinica, Taipei 11529, Taiwan. yauwen@sinica.edu.tw
Tai Pon-Yean
Chen Ying
Li Wen-Hsiung
Article Info
Journal
Molecular phylogenetics and evolution
Abbr.
Mol Phylogenet Evol
ISSN
1055-7903
Published
2002-05-00
Pages
268-75
Language
English
Region
United States
NLM ID
9304400
Subset
IM
Grants
NIGMS NIH HHS · GM30998 · United States
Databases
GENBANK
AF451559, AF451560, AF451561, AF451562, AF451563, AF451564, AF451565, AF451566, AF451567, AF451568, AF451569, AF451570, AF451571, AF451572, AF451573, AF451574, AF451575, AF451576, AF451577, AF451578, AF451579, AF451580, AF451581, AF451582
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